Optimization of Electric water pump for high volume application

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Details

For an automotive application, the electrical water pumps are based on two concepts: Brushed and brushless concepts. A life time study is made and a Brushless Direct current (BLDC) permanent magnet motor is considered for the proceedings of the development,which is discussed in this book. From the pump characteristic curve and customer requirement curve, the requirements of the motor in the form of torque and speed, is found out using the mathematical model. Apparently, using these boundary conditions an Axial Flux BLDC concept is developed and the model is simulated for a FEM analysis in MAXWELL 2D & 3D. As the linear model for the axial flux is not available, a parametric analysis is performed in 2D program and the best geometrical dimensions are fixed. This simulated model is later integrated with the mathematical model in SIMPLORER to find the performance of axial flux against the control drives. Finally the part modeling of water pump is done in CATIA v5 for the axial flux concept and the assembly is done, using a single axial bearing and by attaching the impeller direct to the rotor, without using any shafts. In Parallel the results are also compared between the currently available radial flux motor and the axial flux motor for comparison and identification of better concepts.

Autorentext

Ing. Joel Luther Thambi, born in 1987, pursued Mechanical engineering with a focus one material science, FEA & mechanics at the Anna University- Chennai, India 2005. In 2011, the author finished his Masters in Automotive Engineering at the Ingolstadt Universtiy, Germany. Currently he makes his Doctorate research work at Continental AG Germany.

Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Herausgeber AV Akademikerverlag
    • Gewicht 185g
    • Untertitel A Simulation dirven development
    • Autor Joel Luther Thambi
    • Titel Optimization of Electric water pump for high volume application
    • Veröffentlichung 26.10.2012
    • ISBN 3639458699
    • Format Kartonierter Einband
    • EAN 9783639458695
    • Jahr 2012
    • Größe H220mm x B150mm x T8mm
    • Anzahl Seiten 112
    • GTIN 09783639458695

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